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Untangling Tau and Iron: Exploring the Interaction Between Iron and Tau in Neurodegeneration

机译:解开牛头和铁:探讨神经变性中铁和头之间的相互作用

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摘要

There is an emerging link between the accumulation of iron in the brain and abnormal tau pathology in a number of neurodegenerative disorders, such as Alzheimer’s disease (AD). Studies have demonstrated that iron can regulate tau phosphorylation by inducing the activity of multiple kinases that promote tau hyperphosphorylation and potentially also by impacting protein phosphatase 2A activity. Iron is also reported to induce the aggregation of hyperphosphorylated tau, possibly through a direct interaction via a putative iron binding motif in the tau protein, facilitating the formation of neurofibrillary tangles (NFTs). Furthermore, in human studies high levels of iron have been reported to co-localize with tau in NFT-bearing neurons. These data, together with our own work showing that tau has a role in mediating cellular iron efflux, provide evidence supporting a critical tau:iron interaction that may impact both the symptomatic presentation and the progression of disease. Importantly, this may also have relevance for therapeutic directions, and indeed, the use of iron chelators such as deferiprone and deferoxamine have been reported to alleviate the phenotypes, reduce phosphorylated tau levels and stabilize iron regulation in various animal models. As these compounds are also moving towards clinical translation, then it is imperative that we understand the intersection between iron and tau in neurodegeneration. In this article, we provide an overview of the key pathological and biochemical interactions between tau and iron. We also review the role of iron and tau in disease pathology and the potential of metal-based therapies for tauopathies.
机译:在大脑中铁的积累与许多神经退行性疾病(例如阿尔茨海默氏病(AD))中的tau病理异常之间存在着一种新兴的联系。研究表明,铁可以通过诱导多种促进tau过度磷酸化的激酶的活性,还可能通过影响蛋白质磷酸酶2A的活性来调节tau的磷酸化。据报道,铁还可能通过tau蛋白中假定的铁结合基序直接相互作用来诱导高磷酸化tau的聚集,从而促进神经原纤维缠结(NFT)的形成。此外,在人体研究中,据报道高铁含量与Nau轴承神经元中的tau共同定位。这些数据以及我们自己的工作表明tau在介导细胞铁外排中发挥作用,提供了支持关键的tau:铁相互作用的证据,该相互作用可能影响症状表现和疾病进展。重要的是,这也可能与治疗方向有关,事实上,据报道,在各种动物模型中,使用铁螯合剂(如去铁酮和去铁胺)可减轻表型,降低磷酸化的tau含量并稳定铁的调节。由于这些化合物也正朝着临床翻译的方向发展,因此必须了解神经变性中铁和tau之间的交集。在本文中,我们概述了tau和铁之间的关键病理和生化相互作用。我们还回顾了铁和tau蛋白在疾病病理学中的作用以及以金属为基础的治疗tauopathies的潜力。

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